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Lambda phage nanoparticles displaying HER2-derived E75 peptide induce effective E75-CD8(+) T response

机译:λ噬菌体纳米粒子显示HER2-衍生的E75肽诱导有效的E75-CD8(+)T反应

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We have investigated the in vitro immunogenicity and in vivo prophylactic and therapeutic potential of lambda (lambda) phage particles displaying the E75 peptide (derived from HER2 protein) in an implantable TUBO breast tumor model of BALB/c mice. The mice were immunized with the E75-displaying phage (lambda F7-gpD::E75) every 2-week intervals over a 6-week period, and the generated immune responses were studied. Results showed in vitro induction of immune responses by the lambda F7 (gpD::E75) construct compared to the control lambda F7 and buffer groups. In the in vivo prophylactic study, all the control and vaccinated mice groups developed tumors. However, in the therapeutic experiments, we observed a significant difference in tumor size at days 14-36 for mice immunized with lambda F7 (gpD::E75) compared to control groups (P 0.05). Moreover, the survival time prolonged in mice immunized with lambda F7 (gpD::E75). The discrepancy between the results obtained from the in vitro and in vivo studies may have been a result of the induction of Foxp3 CD4(+)CD25(+) which has been previously reported to hamper effective T cell functionality. In conclusion, we observed a significant immune stimulatory response in the in vitro study, while in vivo, the vaccine was not able to exert significant tumor inhibitory effects. We suggest that the presence of Foxp3(+) CD4(+)CD25(+) cells may have impaired the anti-tumor response in mice challenged in vivo with the TUBO xenograft tumor.
机译:我们研究了在BALB / C小鼠的可植入的Tubo乳腺肿瘤模型中培养了λ(Lambda)噬菌体颗粒的体外免疫原性和λ(λ)噬菌体颗粒的治疗潜力。用E75显示噬菌体(Lambda F7-GPD :: E75)免疫小鼠,每2周的间隔在6周期间隔内,研究产生的免疫应答。结果表明,与对照λF7和缓冲基团相比,Lambda F7(GPD :: E75)构建体体外诱导免疫应答。在体内预防性研究中,所有对照和疫苗的小鼠组产生肿瘤。然而,在治疗实验中,与对照基团(P <0.05)相比,我们观察到用Lambda F7(GPD :: E75)免疫的小鼠的肿瘤大小差异。此外,用Lambda F7免疫的小鼠延长的存活时间(GPD :: E75)。从体外和体内研究获得的结果之间的差异可能是先前据报道的FoxP3 CD4(+)诱导妨碍有效T细胞功能的结果。总之,我们在体外研究中观察到了显着的免疫刺激反应,而在体内,疫苗不能施加显着的肿瘤抑制作用。我们认为FoxP3(+)CD4(+)CD25(+)细胞的存在可能损害小鼠的抗肿瘤反应与Tubo异种移植肿瘤攻击的小鼠。

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